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Simulation of chaotic electrokinetic transport: Performance of commercial software versus custom-built direct numerical simulation codes

机译:混沌电动传输的仿真:商业软件与定制直接数字仿真代码的性能比较

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摘要

Many microfluidic and electrochemical applications involve chaotic transport phenomena that arise due to instabilities stemming from coupling of hydrodynamics with ion transport and electrostatic forces. Recent investigations have revealed the contribution of a wide range of spatio-temporal scales in such electro-chaotic systems similar to those observed in turbulent flows. Given that these scales can span several orders of magnitude, significant numerical resolution is needed for accurate prediction of these phenomena. The objective of this work is to assess accuracy and efficiency of commercial software for prediction of such phenomena. We have considered the electroconvective flow induced by concentration polarization near an ion selective surface as a model problem representing chaotic elecrokinetic phenomena. We present detailed comparison of the performance of a general-purpose commercial computational fluid dynamics (CFD) and transport solver against a custom-built direct numerical simulation code that has been tailored to the specific physics of unsteady electrokinetic flows. We present detailed statistics including velocity and ion concentration spectra over a wide range of frequencies as well as time-averaged statistics and computational time required for each simulation. Our results indicate that while accuracy can be guaranteed with proper mesh resolution and avoiding numerical dissipation, commercial solvers are generally at least an order of magnitude slower than custom-built direct numerical simulation codes. (C) 2015 Elsevier Inc. All rights reserved.
机译:许多微流体和电化学应用涉及混沌输运现象,这是由于流体动力学与离子输运和静电力耦合而产生的不稳定性所致。最近的研究表明,这种时空尺度在这种电混沌系统中的作用类似于在湍流中观察到的时空尺度。鉴于这些标度可以跨越几个数量级,因此需要大量的数值分辨率才能准确预测这些现象。这项工作的目的是评估用于预测这种现象的商业软件的准确性和效率。我们已经将由离子选择表面附近的浓度极化引起的对流作为代表混沌电动力学现象的模型问题。我们将针对通用商业计算流体力学(CFD)和运输求解器的性能与针对不稳定的电动流的特定物理量身定制的直接构建的直接数值模拟代码进行详细比较。我们提供了详细的统计信息,包括在广泛频率范围内的速度和离子浓度谱图,以及每个模拟所需的时间平均统计信息和计算时间。我们的结果表明,尽管可以通过适当的网格分辨率确保精度并避免数值耗散,但商用求解器通常比定制的直接数值模拟代码慢至少一个数量级。 (C)2015 Elsevier Inc.保留所有权利。

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